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Molecular Models for the Hydrogen Age: Hydrogen, Nitrogen, Oxygen, Argon, and Water

机译:氢气时代的分子模型:氢气,氮,氧气,氩气和水

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Thermodynamic properties including the phase behavior of all mixtures containing hydrogen, the main air components nitrogen, oxygen, and argon, as well as water are of particular interest for the upcoming postcarbon age. Molecular modeling and simulation, the PC-SAFT equation of state, and sophisticated empirical equations of state are employed to study the mixture behavior of these five substances. For this purpose, a new force field for hydrogen is developed. All relevant subsystems, that is, binary, ternary, and quaternary mixtures, are considered. The quality of the results is assessed by comparing to available experimental literature data, showing an excellent agreement in Many cases. Molecular simulation; which is the most versatile approach in general, also provides the best overall agreement. Consequently, this contribution aims at an improved availability of thermodynamic data that are required for the hydrogen age.
机译:热力学性质,包括含有氢,主空气分量氮,氧气以及氩气以及水的所有混合物的相行为,对即将到来的后期年龄特别感兴趣。 分子建模和仿真,使用状态的PC-Saft方程,以及状态复杂的状态的经验方程,研究了这五种物质的混合行为。 为此目的,开发了一种用于氢的新力场。 考虑所有相关子系统,即二进制,三元和四季混合物。 通过与可用的实验文献数据进行比较来评估结果的质量,在许多情况下表现出良好的一致性。 分子模拟; 这是一般最通用的方法,也提供了最优秀的协议。 因此,该贡献旨在提高氢气时代所需的热力学数据的可用性。

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